Department of Physics, University of Warwick, Coventry CV4 7AL, UK.
Ultrasonics. 2014 Apr;54(4):997-1004. doi: 10.1016/j.ultras.2013.11.011. Epub 2013 Dec 1.
Shear horizontal (SH) ultrasound guided waves are being used in an increasing number of non-destructive testing (NDT) applications. One advantage SH waves have over some wave types, is their ability to propagate around curved surfaces with little energy loss; to understand the geometries around which they could propagate, the wave reflection must be quantified. A 0.83mm thick aluminium sheet was placed in a bending machine, and a shallow bend was introduced. Periodically-poled magnet (PPM) electromagnetic acoustic transducers (EMATs), for emission and reception of SH waves, were placed on the same side of the bend, so that reflected waves were received. Additional bending of the sheet demonstrated a clear relationship between bend angles and the reflected signal. Models suggest that the reflection is a linear superposition of the reflections from each bend segment, such that sharp turns lead to a larger peak-to-peak amplitude, in part due to increased phase coherence.
横剪切(SH)超声波导波在越来越多的无损检测(NDT)应用中得到了应用。与某些波型相比,SH 波的一个优势是它们能够在几乎没有能量损失的情况下在曲面上传播;为了了解它们能够传播的几何形状,必须量化波的反射。将 0.83mm 厚的铝板放入弯曲机中,引入一个浅弯。周期性极化磁铁(PPM)电磁声换能器(EMAT)用于 SH 波的发射和接收,放置在弯曲的同一侧,以便接收反射波。进一步弯曲板表明,弯曲角度和反射信号之间存在明显的关系。模型表明,反射是每个弯曲段反射的线性叠加,因此急转弯会导致峰峰值幅度更大,部分原因是相位相干性增加。